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G Ring

Publications and source records attributed to G Ring.

12 recordsLinked to original sources

A C2 muscle cell variant defective in transport of the acetylcholine receptor to the cell surface.

We have previously reported the isolation of variants of the C2 mouse muscle cell line that express reduced amounts of acetylcholine receptors (AChRs) on their surface (Black, R. A., and Hall, Z. W. (1985) Proc. Natl. Acad. Sci. U.S.A. 82, 124-128). One of the variants, T-, makes an approximately normal amount of the AChR but accumulates most of it in an intracellular pool. This pool is stable and does not serve as precursor for surface AChR. Surface levels of insulin receptor and transferrin receptor are normal in T- cells, and a normal proportion of total hemagglutinin is expressed on the surface after infection of the T- variant with influenza virus. Pulse-chase experiments and kinetic analysis show: 1) that T- cells synthesize a normal amount of the alpha subunit but degrade it much more slowly than do wild-type cells; and 2) that newly synthesized alpha subunit is assembled into the AChR at a normal rate. A small fraction of the assembled AChR in T- cells is transported to the surface with normal kinetics, but most of it remains in an internal pool. This variant may provide an important tool for investigation of the factors that regulate AChR assembly and transport to the surface membrane.

Animals

Sprouting in intact sartorius muscles of the frog following contralateral axotomy.

The intact hind limb sartorius muscle of the frog was examined anatomically for sprouting following axotomy of the sciatic nerve that contains motor axons innervating the contralateral sartorius muscle. The incidence of sprouting in intact muscles of experimental animals increased more than 3-fold over normal. Thus, contralateral axotomy produces sprouting in intact sartorius muscles much the same as it does in cutaneous-pectoris and piriformis muscles of the frog.

Animals

Dopamine administration in the normotensive pregnant ewe.

Dopamine was administered to pregnant ewes at randomly selected rates of 1, 3, 5, 10, 20, 30, or 40 microgram/kg/min. Doses less than 10 microgram/kg/min produced no significant change in maternal areterial blood pressure, cardiac output, or renal or uterine blood flow. Higher doses increased maternal cardiac output and blood pressure, did not change renal blood flow, but decreased uterine blood flow. Dopamine consistently caused mild maternal and fetal respiratory acidosis.

Animals

Comparison of nitroprusside and hydralazine in hypertensive pregnant ewes.

During phenylephrine-induced hypertension in 6 near-term pregnant ewes, nitroprusside rapidly lowered the blood pressure to control values with no accompanying change in uterine blood flow. Hydralazine slowly lowered the blood pressure to control values. This change was accompanied by a statistically significant (15%) increase in uterine blood flow. Hydralazine also had a more pronounced effect than nitroprusside on cardiac output, heart rate, and total peripheral resistance. There were no significant acid-base changes in mother or fetus throughout the study.

Animals

[A modified screening model for potential cancerostatics by i.v. application of L 1210 ascites cells (author's transl)].

Intravenous application of L 1210 ascites cells failed to produce generalized leukemias. The treated animals died after 6-7 days within a short interval time, revealing the picture of massive tumor cell infiltrations in liver and spleen. Using histological and autoradiographical methods it has been established that the primary processes of ascites cell proliferations occur in liver and spleen. The tested reference substances, cytosine arabinoside and cyclophosphamide, showed in this modified model the same effects as after intraperitoneal application. The extremely short death interval of the control animals makes possible a more precise distinction between the death curves of control and test groups.

Animals

[X-rays].

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Radiography, Dental

Regulation of motor axon sprouting.

Our studies on the amphibian and mammalian motor systems suggest that sprouting of intact motoneurons and synapse formation can be regulated by three mechanisms: peripheral, central, and transneuronal. Peripheral mechanisms provide the means of a direct mode of interaction between the periphery of the nerve cell and the target, to determine the extent of target innervation. The central mechanism enables target muscles to signal the cell bodies of their innervating motoneurons to regulate axonal growth and synapse formation, and thus again determine the extent of their innervation. The transneuronal mechanism provides a vehicle by which the pattern of innervation of a muscle can be altered by nerve cells that do not themselves innervate the muscle, but are an integral part of the entire system.

Animals